Chronic olanzapine treatment causes differential expression of genes in frontal cortex of rats as revealed by DNA
S Hossein Fatemi1, Teri J Reutiman, Timothy D Folsom
1Department of Psychiatry, Division of Neuroscience Research, University of Minnesota Medical School, Minneapolis, MN 55455, USA. fatem002@umn.edu
Abstract:
Recent emerging biochemical data indicate that several important neuroregulatory genes and proteins may be involved in the etiology of schizophrenia and bipolar disorder. Additionally, the same genes appear to be targets of several psychotropic medications that are used to treat these disorders. Recent DNA microarray studies show that genes involved in synaptic neurotransmission, signal transduction, and glutamate/GABA regulation may be differentially regulated in brains of subjects with schizophrenia. We hypothesized that chronic administration of olanzapine to rats would alter expression of various genes that may be involved in the etiology of schizophrenia and mood disorders. Rats were administered olanzapine (N=20, 2 mg/kg/day) or sterile saline intraperitoneally (N=20) daily for 21 days. Control and olanzapine-treated frontal cortices were analyzed using cDNA microarray technology. The results showed significant downregulation of 31 genes and upregulation of 38 genes by greater than two-fold in the drug-treated brains vs controls. Our results provide evidence for altered regulation of genes involved with signal transduction and cell communication, metabolism and energy pathways, transport, immune response, nucleic acid metabolism, and neuronal growth factors. Real-time quantitative RT-PCR analysis verified the direction and magnitude of change in six genes of interest: calbindin 3, homer 1, regulator of G-protein signaling (RGS) 2, pyruvate kinase, Reelin and insulin 2. Western blotting showed significant upregulation in protein products for Reelin 410 and Reelin 180 kDa and downregulation for NMDA3B and RGS2. Our results show for the first time that olanzapine causes changes in levels of several important genes that may be involved in the etiology and treatment of schizophrenia and other psychiatric disorders.
Insights
Olanzapine treatment altered gene expression in rat brains, affecting pathways crucial for psychiatric disorders. This study reveals how this antipsychotic impacts genes related to cell communication and neuronal function.
Area of Science:
- Neuroscience
- Pharmacology
- Genetics
Background:
- Neuroregulatory genes are implicated in schizophrenia and bipolar disorder.
- These genes are also targets for psychotropic medications.
- Previous studies suggest differential gene regulation in schizophrenia brains.
Purpose of the Study:
- To investigate the effect of chronic olanzapine administration on gene expression in rat brains.
- To identify genes involved in the etiology and treatment of schizophrenia and mood disorders.
Main Methods:
- Rats were treated daily with olanzapine (2 mg/kg/day) or saline for 21 days.
- Frontal cortices were analyzed using cDNA microarray technology.
- Gene expression changes were validated using quantitative RT-PCR and Western blotting.
Main Results:
- Olanzapine significantly altered the expression of 69 genes (31 downregulated, 38 upregulated) by over two-fold.
- Key affected pathways include signal transduction, cell communication, metabolism, and neuronal growth.
- Protein levels for Reelin, NMDA3B, and RGS2 were significantly changed.
Conclusions:
- Olanzapine administration induces significant changes in the expression of genes relevant to psychiatric disorders.
- These findings provide novel insights into the molecular mechanisms underlying olanzapine's therapeutic effects.
- The study highlights the role of altered gene regulation in the etiology and treatment of schizophrenia and mood disorders.
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